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Related papers: Branes from a non-Abelian (2,0) tensor multiplet w…

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The theme of this thesis is the study of field theories generically without Lorentz symmetry, but possessing an inhomogeneous scaling symmetry. A number of aspects of such models are explored, including the addition of supersymmetry, and…

High Energy Physics - Theory · Physics 2021-09-10 Rishi Mouland

The component form of the equations of motion for the 5-brane in eleven-dimensions is derived from the superspace equations. These equations are fully covariant in six-dimensions. It is shown that double-dimensional reduction of the bosonic…

High Energy Physics - Theory · Physics 2009-10-30 P. S. Howe , E. Sezgin , P. C. West

We define a new partially solvable system of equations that parametrises solutions to six-dimensional N=(1,0) ungauged supergravity coupled to tensor multiplets. We obtain this system by applying a series of dualities on the known floating…

High Energy Physics - Theory · Physics 2015-06-23 Guillaume Bossard , Stefanos Katmadas

In order to investigate specific aspects of bound state calculations in a non-relativistic framework, we consider the energy-levels of a massive scalar particle, which moves in an external field and interacts in addition with a massless…

High Energy Physics - Phenomenology · Physics 2009-10-31 V. Antonelli , A. Gall , J. Gasser , A. Rusetsky

We reveal non-manifest gauge and SO(1,5) Lorentz symmetries in the Lagrangian description of a six-dimensional free chiral field derived from the Bagger-Lambert-Gustavsson model in arXiv:0804.3629 and make this formulation covariant with…

High Energy Physics - Theory · Physics 2009-11-05 Paolo Pasti , Igor Samsonov , Dmitri Sorokin , Mario Tonin

We derive a metric-like Lagrangian and equations of motion, in AdS space, for multiplets of fermionic fields with spin ranged from 1/2 to s, from their frame-like formulation.

High Energy Physics - Theory · Physics 2017-07-13 Alessandro Agugliaro , Francesco Azzurli , Dmitri Sorokin

Non-extremal overlapping p-brane supergravity solutions localised in their relative transverse coordinates are constructed. The construction uses an algebraic method of solving the bosonic equations of motion. It is shown that these…

High Energy Physics - Theory · Physics 2014-11-18 I. Ya. Aref'eva , M. G. Ivanov , O. A. Rytchkov , I. V. Volovich

We construct the M5-brane limit of eleven-dimensional supergravity. The resulting action is invariant under Galilean boosts and has a local scale symmetry. We also consider the limit of the equations of motion where we recover a…

High Energy Physics - Theory · Physics 2025-10-03 Eric Bergshoeff , Neil Lambert , Joseph Smith

We start from a field-theoretical model of zero range approximation to derive three-dimensional relativistic two- and three-body equations on a null plane. We generalize those equations to finite range interactions. We propose a three-body…

High Energy Physics - Phenomenology · Physics 2009-09-25 E. Di Salvo , L. A. Kondratyuk , P. Saracco

Based on the works of Gordon ([4]) and Zhang-Zhou([8])) on the variational minimizing properties for Keplerian orbits and Lagrangian solutions of Newtonian 2-body and 3-body problems, we use the constrained variational principle of…

Mathematical Physics · Physics 2011-12-06 Ying Lv , Shiqing Zhang

Deformations of the 3-differential of 3-differential graded algebras are controlled by the (3,N) Maurer-Cartan equation. We find explicit formulae for the coefficients appearing in that equation, introduce new geometric examples of…

Quantum Algebra · Mathematics 2015-05-13 Mauricio Angel , Jaime Camacaro , Rafael Diaz

Recently an action based on Lie 3-algebras was proposed to describe M2-branes. We study the case of infinite dimensional Lie 3-algebras based on the Nambu-Poisson structure of three dimensional manifolds. We show that the model contains…

High Energy Physics - Theory · Physics 2014-11-18 Pei-Ming Ho , Yutaka Matsuo

We derive the action for the non-abelian field theory living on parallel non-BPS D3-branes in type IIA theory on the orbifold T^4/I_4(-1)^F_L. The classical moduli space for the massless scalars originating in the ``would be'' tachyonic…

High Energy Physics - Theory · Physics 2009-10-31 Neil D. Lambert , Ivo Sachs

We propose a non-linear extension of U(1) \times U(1) (abelian) ABJM model including T_{M2} (higher derivative) corrections. The action proposed here is expected to describe a single M2-brane proving C^4/Z_k target space. The model includes…

High Energy Physics - Theory · Physics 2015-05-14 Shin Sasaki

We construct a new classical solution in the ABJM theory corresponding to M5-branes with a non-zero self-dual three form flux. This is an M-theory lift of the D4-brane solution expressed as a non-commutative plane in the three dimensional…

High Energy Physics - Theory · Physics 2010-01-07 Seiji Terashima , Futoshi Yagi

We study the current algebras of the NS5-branes, the Kaluza-Klein (KK) five-branes and the exotic $5^2_2$-branes in type IIA/IIB superstring theories. Their worldvolume theories are governed by the six-dimensional $\mathcal{N}= (2,0)$…

High Energy Physics - Theory · Physics 2021-04-02 Machiko Hatsuda , Shin Sasaki , Masaya Yata

We carefully investigate the modified Einstein's field equation in a four dimensional (3-brane) arbitrary manifold embedded in a five dimensional Non-Riemannian bulk spacetime with a noncompact extra dimension. In this context the…

General Relativity and Quantum Cosmology · Physics 2013-01-23 Rodrigo Maier , Felipe Tovar Falciano

Quaternions have an (over a century-old) extensive and quite complicated interaction with special relativity. Since quaternions are intrinsically 4-dimensional, and do such a good job of handling 3-dimensional rotations, the hope has always…

General Relativity and Quantum Cosmology · Physics 2020-03-16 Thomas Berry , Matt Visser

We derive the non-linear dual graviton equation of motion in eleven dimensions in the context of E theory.

High Energy Physics - Theory · Physics 2020-08-26 Keith Glennon , Peter West

We provide a tensor calculus for $n$-number of ${\mathcal N}=(1,0)$ linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function ${\mathcal F}_{IJ}$ that is subject to certain constraints. We provide…

High Energy Physics - Theory · Physics 2020-12-29 Ugur Atli , Omer Guleryuz , Mehmet Ozkan